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Nonlinear Entropy Transfer in ETG-TEM Turbulence via TEM Driven Zonal Flows

机译:TEM驱动的带状流在ETG-TEM湍流中的非线性熵转移

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Nonlinear interplay of the electron temperature gradient (ETG) modes and the trapped electron modes (TEMs) was investigated by means of gyrokientic simulation. Focusing on the situation where both TEMs and ETG modes are linearly unstable, the effects of TEM-driven zonal flows on ETG turbulence were examined by means of entropy transfer analysis. In a statistically steady turbulence where the TEM driven zonal flows are dominant, it turned out that the zonal flows meditate the entropy transfer of the ETG modes from the low to high radial wavenumber regions. The successive entropy transfer broadens the potential fluctuation spectrum in the radial wavenumber direction. In contrast, in the situation where ETG modes are unstable but TEMs are stable, the pure ETG turbulence does not produce strong zonal flows, leading to a rather narrow spectrum in the radial wavenumber space and a higher transport level.
机译:通过回旋模拟研究了电子温度梯度(ETG)模式和捕获电子模式(TEM)的非线性相互作用。针对TEM和ETG模式均线性不稳定的情况,通过熵转移分析研究了TEM驱动的纬向流对ETG湍流的影响。事实证明,在由TEM驱动的纬向流占主导地位的统计稳定湍流中,纬向流对ETG模式从低径向波数区域到高径向波数区域的熵转移进行了沉思。连续的熵转移扩大了径向波数方向上的电势波动谱。相反,在ETG模态不稳定而TEM稳定的情况下,纯ETG湍流不会产生强的纬向流,从而导致径向波数空间中的光谱相当窄,并且传输水平更高。

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